Haskell Richard C, Liao David, Pivonka Adam E, Bell Tera L, Haberle Brendan R, Hoeling Barbara M, Petersen Daniel C
Department of Physics, Harvey Mudd College, Claremont, California 91711, USA.
J Opt Soc Am A Opt Image Sci Vis. 2006 Nov;23(11):2747-55. doi: 10.1364/josaa.23.002747.
The sensitivity and dynamic range of optical coherence tomography (OCT) are calculated for instruments utilizing two common interferometer configurations and detection schemes. Previous researchers recognized that the performance of dual-balanced OCT instruments is severely limited by beat noise, which is generated by incoherent light backscattered from the sample. However, beat noise has been ignored in previous calculations of Michelson OCT performance. Our measurements of instrument noise confirm the presence of beat noise even in a simple Michelson interferometer configuration with a single photodetector. Including this noise, we calculate the dynamic range as a function of OCT light source power, and find that instruments employing balanced interferometers and balanced detectors can achieve a sensitivity up to six times greater than those based on a simple Michelson interferometer, thereby boosting image acquisition speed by the same factor for equal image quality. However, this advantage of balanced systems is degraded for source powers greater than a few milliwatts. We trace the concept of beat noise back to an earlier paper.
针对采用两种常见干涉仪配置和检测方案的仪器,计算了光学相干断层扫描(OCT)的灵敏度和动态范围。先前的研究人员认识到,双平衡OCT仪器的性能受到拍频噪声的严重限制,拍频噪声是由样品反向散射的非相干光产生的。然而,在先前对迈克尔逊OCT性能的计算中,拍频噪声被忽略了。我们对仪器噪声的测量证实,即使在具有单个光电探测器的简单迈克尔逊干涉仪配置中,也存在拍频噪声。考虑到这种噪声,我们计算了作为OCT光源功率函数的动态范围,发现采用平衡干涉仪和平衡探测器的仪器可以实现比基于简单迈克尔逊干涉仪的仪器高六倍的灵敏度,从而在相同图像质量下将图像采集速度提高相同的倍数。然而,对于大于几毫瓦的光源功率,平衡系统的这一优势会降低。我们将拍频噪声的概念追溯到一篇早期论文。